CN207764493U - For vision correction overlap two lens group sliding vertical single motor driving device - Google Patents

For vision correction overlap two lens group sliding vertical single motor driving device Download PDF

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Publication number
CN207764493U
CN207764493U CN201721030522.1U CN201721030522U CN207764493U CN 207764493 U CN207764493 U CN 207764493U CN 201721030522 U CN201721030522 U CN 201721030522U CN 207764493 U CN207764493 U CN 207764493U
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China
Prior art keywords
eyeglass
vertical
strip
stripe
equidistant
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CN201721030522.1U
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Chinese (zh)
Inventor
陈奎
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Chen Kui
Chengdu Tongkang Technology Co ltd
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Individual
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    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C7/00Optical parts
    • G02C7/02Lenses; Lens systems ; Methods of designing lenses
    • G02C7/08Auxiliary lenses; Arrangements for varying focal length
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B7/00Mountings, adjusting means, or light-tight connections, for optical elements
    • G02B7/02Mountings, adjusting means, or light-tight connections, for optical elements for lenses
    • G02B7/021Mountings, adjusting means, or light-tight connections, for optical elements for lenses for more than one lens
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B7/00Mountings, adjusting means, or light-tight connections, for optical elements
    • G02B7/02Mountings, adjusting means, or light-tight connections, for optical elements for lenses
    • G02B7/023Mountings, adjusting means, or light-tight connections, for optical elements for lenses permitting adjustment
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B7/00Mountings, adjusting means, or light-tight connections, for optical elements
    • G02B7/02Mountings, adjusting means, or light-tight connections, for optical elements for lenses
    • G02B7/04Mountings, adjusting means, or light-tight connections, for optical elements for lenses with mechanism for focusing or varying magnification
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C7/00Optical parts
    • G02C7/02Lenses; Lens systems ; Methods of designing lenses
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C7/00Optical parts
    • G02C7/02Lenses; Lens systems ; Methods of designing lenses
    • G02C7/06Lenses; Lens systems ; Methods of designing lenses bifocal; multifocal ; progressive
    • G02C7/061Spectacle lenses with progressively varying focal power
    • G02C7/063Shape of the progressive surface
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C7/00Optical parts
    • G02C7/02Lenses; Lens systems ; Methods of designing lenses
    • G02C7/08Auxiliary lenses; Arrangements for varying focal length
    • G02C7/088Lens systems mounted to spectacles

Abstract

The utility model belongs to the device of the slideable varifocal vision correction of two groups of collimating optics lens of electric drive for the overlap vertical single motor driving device of two lens group sliding of vision correction.Gear including being fixed on the decelerating motor and motor in centre position above diplopore stripe board is respectively equipped with two eyeglass assemblies being slidably connected in two strip-shaped holes of diplopore stripe board;The structure of eyeglass assembly:Flute profile strip, sliding substrate, the top clamp plate for having more vertical equidistant zoom stripe surface eyeglasses, connecting eyeglass that mutually interdependent order connects from bottom to top;More than the two pieces vertical equidistant zoom stripe surface eyeglass connected in one flute profile strip is at a two lens group;The gear of decelerating motor makes two eyeglass assemblies slide round about, and the eyeglass of overlapping generates a large amount of combination diopter.One motor adds a gear, directly constant speed two two lens groups can be driven to move at the uniform velocity round about, simple in structure, as the zoom training device of eyes, myopia is helped to restore eyesight.

Description

For vision correction overlap two lens group sliding vertical single motor driving device
Technical field
The utility model belongs to Zoom optical lens technology, more particularly to can with two groups of collimating optics lens of electric drive Slidingtype varifocal, the two lens group sliding motor driving device that overlaps for vision correction.
Background technology
Chinese patent 201610092191.8《A kind of gradual change punktal lens》It is plane to provide a kind of lens base, another Face is free form surface, and the free form surface is made of concave surface, and is equipped with several regions, and each area in the free form surface The vertical extension in domain is equal.The length in region is 0.1.0mm~100mm, and the refractive diopter in region is 1~2000 degree, diopter Number is evenly distributed on lens, and each unit length etc. point distribution focus.
It is above-mentioned《A kind of gradual change punktal lens》Defect is the eyeglass of the training of " free form surface " as myopia correction, it is difficult to Being arranged can only be used as with " free form surface " matched training method at rule, " free form surface " eyeglass and be trained to people oneself hand The eyeglass that work movement two lens relative position is trained.And " free form surface " eyeglass does not point out the shape knot in " several regions " Structure does not know that the shape and structure in " several regions " is spherical surface, ellipsoidal surface or trapezoidal faces;The length in 0.1.0mm~100mm The refractive diopter for spending region is 1~2000 degree, i.e., cannot achieve refractive diopter in the length areas of 0.1.0mm~100mm is 1 ~2000 degree of variation does not indicate yet and realizes that refractive diopter is 1~2000 degree of change in the length areas of 0.1.0mm~100mm What the structure of change is.So the effect of technical solution cannot achieve correction.
Chinese patent 201520246792.0《One kind can arbitrary focus-variable lens group》Provide one kind:One of every eyeglass Surface is horizontal plane, another surface of eyeglass is the non-aqueous plane surface for meeting mathematics changing rule height and rising and falling;The mirror Peak and a minimum point there are one being respectively provided on the non-aqueous plane surface of piece;The peak of the non-aqueous plane surface of the eyeglass with most Multiple optical centres of consecutive variations are evenly distributed between low spot, along the non-aqueous plane surface of eyeglass;Multiple optical centres Refractive diopter successively decrease successively or be incremented by.Defect is " the meeting mathematics changing rule " does not indicate it is what rule.Described " being uniformly distributed an optical centre at interval of 1.0mm ", then the curved surface can only be spherical shape structure to an optical centre, and ball Face shape and structure is difficult to realize the training function of vision correction, because the sight of human eye is to pass through eyeglass, and eyeglass in a point Each of interval be an optic center point, the two points of the point and optic center point of sight are it is difficult to overlap.So the technology Scheme cannot achieve the training of vision correction, cannot achieve the problems such as thoroughly solving asthenopia.And " non-aqueous plane surface " Record does not indicate it is what curved surface.
Chinese patent 201310311306.4《A kind of novel Ortho-K and its application method》Disclose an eye Different-diameter position is arranged to four arc rings of different curvature on eyeglass, and one glasses of wearing is enable to obtain four different curvatures Arc ring ill eyes are treated.The disadvantage is that:One glasses only there are four types of the arc ring of different curvature, put on one this Kind glasses are very little to the quantity for the optional curvature mirror that ill eyes are treated, and to select most suitable glasses that can only put There is a family of a large amount of spare glasses, it is very inconvenient and influence treatment;Glasses for selection are too many and cost increases.
Chinese patent 201521122053.7《A kind of Zoom glasses》Disclose a kind of images of left and right eyes has two varifocal mirrors respectively Piece is by electronic motor-driven carry out zoom, the glasses treated to eyes.The disadvantage is that:
(1) it cannot achieve goal of the invention:This patent only discloses transmission mechanism, does not disclose the structure of " focus-variable lens ", So how the how sharp transmission mechanism of eyeglass realizes that zoom is unclear, i.e., with 201521122053.7《A kind of Zoom glasses》It passes Motivation structure matches 201310311306.4《A kind of novel Ortho-K and its application method》Spectacle lens, then 201521122053.7《A kind of Zoom glasses》It cannot achieve the zoom application of " visual training ";
(2) drive mechanism is wrong:The transmission order of the structure is the positive and negative tooth screw rod-fixation of motor-reduction gear box- Bolt-front lens and rear lens are slided round about.Common knowledge " positive and negative tooth screw rod " be not have on a screw rod orthodontic and Anti- tooth, i.e. a screw rod only have orthodontic or a certain kind of only anti-tooth.So common knowledge is:A piece screw rod can only drive simultaneously Direct engaging member is rotated to a direction.And 201310311306.4 patents are a screw rod while the directly occlusion of driving two Component " fixing bolt " is rotated to opposite both direction, to be the knot of mistake to both direction sliding with former and later two eyeglasses Structure.
(3) " fixing bolt " can not achieve transmission:By word and the attached drawing of the patent document it is found that " fixing bolt " be by The intermediate member of " positive and negative tooth screw rod " and " eyeglass " transmission, but the word of patent document and attached drawing do not provide " fixing bolt " energy Enough structures " positive and negative tooth screw rod " and " eyeglass " transmission.The position relationship of only each component can not achieve without structural relation Reach the drive mechanism of goal of the invention needs.
Invention content
The purpose of this utility model be to provide it is a kind of with have be on one side more vertical different diopter stripeds eyeglass, and it is preceding It can be made a relative move by motor with rear two lens group, two lens are combined into varifocal, front and rear two lens group before and after realizing Regular diopter variation can be generated, is facilitated with after computer program controlled motor, front and rear two lens group can be generated by rule The vertical single motor driving device for the two lens group sliding that overlaps used corrected defects of vision.
The structure of the utility model:
For vision correction overlap two lens group sliding vertical single motor driving device, it is characterised in that:Including double Hole stripe board 101, the decelerating motor 102 being fixed on above diplopore stripe board 101, in two strip-shaped holes of diplopore stripe board 101 Two eyeglass assemblies 104 being slidably connected are respectively equipped in 103;
The structure of diplopore stripe board 101:Strip-shaped hole 103 parallel to each other there are two being set in one piece of stripe board, the strip-shaped hole 103 stripe boards are divided into outer panel 106, middle partition board 107, interior plate 108;The upper surface of middle partition board 107 center is equipped with interval Plate is recessed or middle partition board hole 118;
The structure of eyeglass assembly 104:Interdependent order connection mutual from bottom to top has more vertical equidistant zoom stripe surface mirrors Piece 2, flute profile strip 109, sliding substrate 110, the top clamp plate 111 for connecting eyeglass;More vertical equidistant zoom stripe surface eyeglasses 2 Top margin 112 be entrapped in the card slot of flute profile strip 109, keep more vertical equidistant zoom stripe surface eyeglasses 2 and flute profile strip 109 solid Fixed connection;The upper surface of flute profile strip 109 is fixedly connected with sliding substrate 110, and vertical rack is bolted in the side of sliding substrate 110 Plate 113;The upper surface of vertical rack plate 113 is connected with top clamp plate 111;Sliding substrate 110 and vertical rack plate 113 it is total The width of thickness and 101 strip-shaped hole 103 of diplopore stripe board at tight fit size;More vertical equidistant zoom stripe surface eyeglasses 2 points is smooth even surface 1 and have more vertical equidistant zoom stripe surface eyeglasses 2;It is connected with more than two pieces in one flute profile strip 109 The vertical equidistant zoom stripe surface eyeglass 2 of root, the smooth even surface 1 of this more than two pieces vertical equidistant zoom stripe surface eyeglasses 2 To the same face, this more than two pieces vertical equidistant zoom stripe surface eyeglasses 2 have more vertical equidistant zoom stripe surface mirrors Piece 2 is to the same face;More than the two pieces vertical equidistant zoom stripe surface eyeglass 2 connected in one flute profile strip 109 is double at one Lens set 116;
The connection structure of diplopore stripe board 101 and eyeglass assembly 104:101 two bar shapeds parallel to each other of diplopore stripe board In hole 103 respectively card there are one the sliding substrate 110 and vertical rack plate 113 of eyeglass assembly 104, two eyeglass assemblies 104 Vertical rack plate 113 is adjacent with 107 both sides of middle partition board of diplopore stripe board 101 respectively;Strip-shaped hole 103 and it is stuck in sliding therein Substrate 110 and vertical rack plate 113 are contacted at slidable tight fit;109 width of flute profile strip below strip-shaped hole 103 is big In the width of strip-shaped hole 103, it is located at the width that 111 width of top clamp plate above strip-shaped hole 103 is more than strip-shaped hole 103, makes cunning Dynamic substrate 110 and vertical rack plate 113 are stuck in strip-shaped hole 103 and slide;The two lens group 116 of two eyeglass assemblies 104 is put down It is adjacent to flatten sliding surface 1;The tooth form of two 104 vertical rack plates 113 of eyeglass assembly is identical;
The structure of decelerating motor 102:The rotation axis of decelerating motor 102 be equipped with gear 117, the tooth form of the gear 117 and The tooth form of two 104 vertical rack plates 113 of eyeglass assembly is identical;
The connection structure of decelerating motor 102, diplopore stripe board 101 and eyeglass assembly 104:Decelerating motor 102 is fixedly connected The gear 117 of center on diplopore stripe board 101, decelerating motor 102 is located at partition board 107 in diplopore stripe board 101 Middle partition board recess or middle partition board hole 118 in, gear 117 is engaged with the vertical rack plate 113 of two eyeglass assemblies 104 respectively; Gear 117 is rotated to any direction, and two vertical rack plates 113 of two eyeglass assemblies 104 is all made to slide round about, and two A vertical rack plate 113 drives the two lens group 116 respectively connected to move round about respectively;
More vertical equidistant zoom stripe surface eyeglasses 2 include two opposite transparent surfaces, and one is smooth even surface 1, The other is more vertical equidistant zoom stripe surface eyeglasses 2;More vertical equidistant zoom stripe surface eyeglasses 2 are multiple equidistant It is parallel from width bar shaped curved surface 3 to form side by side, make more vertical equidistant 2 cross sections of zoom stripe surface eyeglass at equidistant width Sawtooth corrugation shape structure,
Each the strip width d of equidistant width bar shaped curved surface 3 side by side is equal, and the range of each strip width d is 0.5mm is to some value between 3.0mm;
The lens strength numerical value of the same equidistant width bar shaped curved surface 3 is identical, and the same equidistant width bar shaped is bent Whole lens focus in face 3 are point-blank;
The lens of the equidistant width bar shaped curved surface of the wholes of same more vertical equidistant zoom stripe surface eyeglasses 23 are burnt Point line is mutually parallel;
Between the very poor N of diopter numerical value of same more vertical equidistant zoom stripe surface eyeglasses 2 is 10 degree to 100 degree Some value;
The equidistant width bar shaped curved surface of the wholes of same more vertical equidistant zoom stripe surface eyeglasses 23 is arranged side by side, And the very poor N of lens strength numerical value is identical;
The vertical rack plate of separator bar 5 and eyeglass assembly 104 between any two neighboring equidistant width bar shaped curved surface 3 113 is parallel.
The vertical equidistant zoom stripe surface eyeglass of more than two pieces of one two lens group 116 of the same eyeglass assembly 104 2 Cassette is connected on a flute profile strip 109 side by side;More of two two lens groups 116 of two eyeglass assemblies 104 are vertical equidistant It is in overlapping relation from zoom stripe surface eyeglass 2, and be overlapped more than two pieces vertical equidistant zoom stripe surface eyeglass 2 be all with The mode that smooth even surface 1 is in contact is overlapped.
Above-mentioned apparatus can be made plus power supply, controller, shell and glasses hook overlap for vision correction it is double The glasses of lens set sliding.The effect of this glasses is as follows:
Diplopore stripe board 101 is used as supporting rack, and so that decelerating motor 102 is engaged gear 117 by both sides keeps two eyeglasses total There is fixed constant speed sliding relation round about at 104 vertical rack plate 113, it is vertical due to two eyeglass assemblies 104 Rack-plate 113 is engaged in the diameter opposite face of both sides occlusion gear 117 respectively, so both sides are engaged gear 117 to any direction Rotation, all makes the sliding round about of two 113 constant speed of vertical rack plate.Each vertical rack plate 113 is total with this eyeglass Be fixedly connected at 104 more vertical equidistant zoom stripe surface eyeglasses 2, then two 113 constant speed of vertical rack plate to opposite Direction is slided, and sliding round about for more vertical equidistant 2 constant speed of zoom stripe surface eyeglass of two eyeglass assemblies 104 is driven It is dynamic.To make multiple equidistant width bar shapeds on more vertical equidistant zoom stripe surface eyeglasses 2 of two eyeglass assemblies 104 When curved surface 3 slides into any different location, the difference that more than two pieces vertical equidistant zoom stripe surface eyeglass 2 synthesizes can be obtained Diopter.
Since the strip width d of each equidistant width bar shaped curved surface 3 side by side is equal, and each strip width d Range is 0.5mm to some value between 3.0mm.If the width of more than one piece vertical equidistant zoom stripe surface eyeglass 2 For 40mm, the range of each strip width d is 1.0mm, every piece more vertical equidistant zoom stripe surface eyeglasses 2 have 40 it is equidistant From width bar shaped curved surface 3.The vertical 2 mutually sliding of equidistant zoom stripe surface eyeglass of more than two pieces of two eyeglass assemblies 104 changes Become relative position, the different diopter of 40*40=1600 kinds can be obtained.And the Chinese patent of the prior art 201310311306.4《A kind of novel Ortho-K and its application method》Only there are four types of the arcs of different curvature for one glasses I.e. only there are four types of different diopters for shape ring.It can be seen that the glasses that the device of this patent is made have 1600 kinds of different diopters, Than glasses of the prior art, only there are four types of diopters to increase the diopter of 400 times of quantity.Meaning in use is, Zoom training for eyes, helps to have the patient of myopia to restore eyesight, the glasses made with the device of this patent are just The needs that patient restores eyesight to whole diopters can be solved, the prior art is solved and patient oneself is required to be difficult to correctly select not Same glasses, can only be in treatment, the costly problem of glasses.
Decelerating motor 102 is fixedly connected on the center above diplopore stripe board 101, in 102 rotation axis of decelerating motor Gear 117 be directly engaged with the vertical rack plate 113 of two eyeglass assemblies 104, decelerating motor 102 synchronize driving two eyeglasses The power transmission of assembly 104 is simpler, reduces the kinetic equation loss in transmission, especially for small miniature of power on glasses Light motor, the consumption for reducing transmission are extremely important.
The advantages of the utility model above-mentioned apparatus is made glasses, had plus power supply, controller, shell and glasses hook is such as Under:
1, doctor is remote controlled is trained the patient for restoring eyesight:It is each equidistant in the same lens straight grain monolithic The very poor N of lens strength numerical value from width bar shaped curved surface is identical, and meaning is to drive forward and backward two with computer program controlled motor When block lens straight grain monolithic displacement, two equidistant width bar shaped curved surfaces of velocity of displacement and two each positions of straight grain monolithic Synthesis lens strength numerical value has fixed functional relation, you can to control each position with the velocity of displacement between two pieces of monolithics Synthesis lens strength numerical value, Portable computer controls motor speed, by way of corner network remote, before realizing control, The synthesis lens strength value of monolithic afterwards, i.e. doctor are remote controlled to be trained the patient for restoring eyesight.
2, any position of forward and backward two eyeglass can all generate accurately synthesis lens strength simultaneously:In straight grain monolithic Each strip width d is identical, each to be combined into there are one equidistant width bar shaped curved surface when two straight grain monolithics synthesize lens One has the synthesis lens for setting diopter numerical value, other equidistant width bar shaped curved surfaces in the two straight grain monolithics that can also divide The synthesis lens that Zu Cheng do not have setting diopter numerical value, not will produce the region that cannot be imaged.
3, any lap position of forward and backward two eyeglass can all generate a variety of synthesis lens strengths and be selected for patient simultaneously With:The structure type of each equidistant width bar shaped curved surface in the same lens straight grain monolithic, each equidistant width bar shaped are bent There is a lens focus line in face, there is a plurality of lens focus line being mutually parallel, forward and backward two association eyeglass phase in every piece of monolithic When mutually sliding becomes position, the synthesis lens that the sight of patient passes through the point of forward and backward monolithic that can find most suitable patient's eye are bent Luminosity, a variety of gradients synthesis lens strength for being most suitable for the adjacent position of synthesis lens strength suffered from are used as to eyes Zoom training be used, help myopia patient restore eyesight use.One glasses of the utility model can get more than 1000 kinds Gradient synthesizes lens strength, hence it is evident that can only obtain 4 kinds of gradients better than one glasses of the prior art and synthesize lens strength.
The glasses made of the utility model, forward and backward eyeglass mutually can generate 1000 multiple and different combinations with respect to sliding Lens strength effect, these are a large amount of, slidably and the compound lens diopter that changes is zoom training to eyes, help The patient of myopia restores the good method of eyesight.
4, the smooth even surface of forward and backward eyeglass makes contact to overlapping and ensures to synthesize lens strength number without interval gap structure Accurately:Two strip-shaped holes parallel to each other of diplopore stripe board, placed restrictions on forward and backward eyeglass can only along strip-shaped hole long side direction it is past Multiple movement is not protected to making the direction in the spaced apart gap of forward and backward eyeglass move.
5, motor gear is directly engaged the fixed vertical rack plate of forward and backward eyeglass difference, makes forward and backward eyeglass round about The speed and length of sliding are all fully synchronized.
6, sliding substrate and vertical rack plate remove separation structure so that it can sliding substrate and vertical rack plate with compared with After thin mode is caught among the strip-shaped hole of diplopore stripe board, then the spacing of sliding substrate and vertical rack plate is adjusted, makes sliding The final overall thickness of substrate and vertical rack plate is seldom at gap in strip-shaped hole, and slidable tight fit clamping structure.
7, a motor adds a gear, directly constant speed two two lens groups can be driven to move at the uniform velocity round about, It is simple in structure.
Description of the drawings
Fig. 1 is the three-dimensional assembling structure schematic diagram of the utility model;
Fig. 2 is the more vertical equidistant zoom stripe surface lens plane structural schematic diagrams of the utility model;
Fig. 3 is the more vertical equidistant zoom stripe surface eyeglass dimensional structure diagrams of the utility model;
Fig. 4 is connect with the smooth even surface sliding of more than the two pieces vertical equidistant zoom stripe surface eyeglass of the utility model The state of touching, composition is nonseptate can be mutually with respect to the cross-sectional view of sliding;
Fig. 5 is the dimensional structure diagram that the utility model has assembled.
In figure, 1 it is smooth even surface, 2 be more vertical equidistant zoom stripe surface eyeglasses, 3 is equidistant width bar shaped Curved surface, 5 be separator bar, 101 be diplopore stripe board, 102 be decelerating motor, 103 be strip-shaped hole, 104 be eyeglass assembly, 106 be Outer panel, 107 be middle partition board, 108 be interior plate, 109 be flute profile strip, 110 be sliding substrate, 111 be top clamp plate, 112 be Top margin, 113 be vertical rack plate, 116 be two lens group, 117 be gear.
Specific implementation mode
Embodiment 1, the vertical single motor driving device of the two lens group that overlaps for vision correction sliding
Such as Fig. 1,2,3,4,5,
Overlap the vertical single motor driving device of two lens group sliding for vision correction, including diplopore stripe board 101, The decelerating motor 102 being fixed on above diplopore stripe board 101 is respectively equipped in two strip-shaped holes 103 of diplopore stripe board 101 Two eyeglass assemblies 104 being slidably connected;
The structure of diplopore stripe board 101:Strip-shaped hole 103 parallel to each other there are two being set in one piece of stripe board, the strip-shaped hole 103 stripe boards are divided into outer panel 106, middle partition board 107, interior plate 108;The upper surface of middle partition board 107 center is equipped with interval Plate is recessed or middle partition board hole 118;
The structure of eyeglass assembly 104:Interdependent order connection mutual from bottom to top has more vertical equidistant zoom stripe surface mirrors Piece 2, flute profile strip 109, sliding substrate 110, the top clamp plate 111 for connecting eyeglass;More vertical equidistant zoom stripe surface eyeglasses 2 Top margin 112 be entrapped in the card slot of flute profile strip 109, keep more vertical equidistant zoom stripe surface eyeglasses 2 and flute profile strip 109 solid Fixed connection;The upper surface of flute profile strip 109 is fixedly connected with sliding substrate 110, and vertical rack is bolted in the side of sliding substrate 110 Plate 113;The upper surface of vertical rack plate 113 is connected with top clamp plate 111;Sliding substrate 110 and vertical rack plate 113 it is total The width of thickness and 101 strip-shaped hole 103 of diplopore stripe board at tight fit size;More vertical equidistant zoom stripe surface eyeglasses 2 points is smooth even surface 1 and have more vertical equidistant zoom stripe surface eyeglasses 2;It is connected with more than two pieces in one flute profile strip 109 The vertical equidistant zoom stripe surface eyeglass 2 of root, the smooth even surface 1 of this more than two pieces vertical equidistant zoom stripe surface eyeglasses 2 To the same face, this more than two pieces vertical equidistant zoom stripe surface eyeglasses 2 have more vertical equidistant zoom stripe surface mirrors Piece 2 is to the same face;More than the two pieces vertical equidistant zoom stripe surface eyeglass 2 connected in one flute profile strip 109 is double at one Lens set 116;The area of more vertical equidistant zoom stripe surface eyeglasses 2 is similar or slightly longer to common spectacles piece size 1-2 centimetres.Left and right more than two pieces vertical equidistant zoom stripe surface eyeglasses 2 in one two lens group 116 are used as left eye and the right side Eye uses.
The connection structure of diplopore stripe board 101 and eyeglass assembly 104:101 two bar shapeds parallel to each other of diplopore stripe board In hole 103 respectively card there are one the sliding substrate 110 and vertical rack plate 113 of eyeglass assembly 104, two eyeglass assemblies 104 Vertical rack plate 113 is adjacent with 107 both sides of middle partition board of diplopore stripe board 101 respectively;Strip-shaped hole 103 and it is stuck in sliding therein Substrate 110 and vertical rack plate 113 are contacted at slidable tight fit;109 width of flute profile strip below strip-shaped hole 103 is big In the width of strip-shaped hole 103, it is located at the width that 111 width of top clamp plate above strip-shaped hole 103 is more than strip-shaped hole 103, makes cunning Dynamic substrate 110 and vertical rack plate 113 are stuck in strip-shaped hole 103 and slide;The two lens group 116 of two eyeglass assemblies 104 is put down It is adjacent to flatten sliding surface 1;The tooth form of two 104 vertical rack plates 113 of eyeglass assembly is identical.
The structure of decelerating motor 102:The rotation axis of decelerating motor 102 be equipped with gear 117, the tooth form of the gear 117 and The tooth form of two 104 vertical rack plates 113 of eyeglass assembly is identical;
The connection structure of decelerating motor 102, diplopore stripe board 101 and eyeglass assembly 104:Decelerating motor 102 is fixedly connected The gear 117 of center on diplopore stripe board 101, decelerating motor 102 is located at partition board 107 in diplopore stripe board 101 Middle partition board recess or middle partition board hole 118 in, gear 117 is engaged with the vertical rack plate 113 of two eyeglass assemblies 104 respectively; Gear 117 is rotated to any direction, and two vertical rack plates 113 of two eyeglass assemblies 104 is all made to slide round about, and two A vertical rack plate 113 drives the two lens group 116 respectively connected to move round about respectively;
More vertical equidistant zoom stripe surface eyeglasses 2 include two opposite transparent surfaces, and one is smooth even surface 1, The other is more vertical equidistant zoom stripe surface eyeglasses 2;More vertical equidistant zoom stripe surface eyeglasses 2 are multiple equidistant It is parallel from width bar shaped curved surface 3 to form side by side, make more vertical equidistant 2 cross sections of zoom stripe surface eyeglass at equidistant width Sawtooth corrugation shape structure,
Each the strip width d of equidistant width bar shaped curved surface 3 side by side is equal, and the range of each strip width d is 0.5mm is to some value between 3.0mm;
The lens strength numerical value of the same equidistant width bar shaped curved surface 3 is identical, and the same equidistant width bar shaped is bent Whole lens focus in face 3 are point-blank;
The lens of the equidistant width bar shaped curved surface of the wholes of same more vertical equidistant zoom stripe surface eyeglasses 23 are burnt Point line is mutually parallel;
Between the very poor N of diopter numerical value of same more vertical equidistant zoom stripe surface eyeglasses 2 is 10 degree to 100 degree Some value;
The equidistant width bar shaped curved surface of the wholes of same more vertical equidistant zoom stripe surface eyeglasses 23 is arranged side by side, And the very poor N of lens strength numerical value is identical;
The vertical rack plate of separator bar 5 and eyeglass assembly 104 between any two neighboring equidistant width bar shaped curved surface 3 113 is parallel.
The vertical equidistant zoom stripe surface eyeglass of more than two pieces of one two lens group 116 of the same eyeglass assembly 104 2 Cassette is connected on a flute profile strip 109 side by side;More of two two lens groups 116 of two different eyeglass assemblies 104 are vertical Equidistant zoom stripe surface eyeglass 2 is in overlapping relation, and more than two pieces vertical equidistant zoom stripe surface eyeglass 2 being overlapped is all It is to be overlapped in such a way that smooth even surface 1 is in contact.
The equidistant width bar shaped curved surface of the whole of more than one vertical equidistant zoom stripe surface eyeglass 23 is arranged side by side knot Structure is as follows:
Equidistant 3 lens strength of width bar shaped curved surface of whole of more than one vertical equidistant zoom stripe surface eyeglass 2 The very poor N of numerical value is identical, and lens strength numerical value is that 200 degree to -1000 of specific arranged distribution is as follows:
In above-mentioned table:
Ordinal number refers to:1 to 25 refers to the sequence number of totally 25 equidistant width bar shaped curved surfaces 3;
The number of degrees refer to:The lens strength numerical value of the equidistant width bar shaped curved surface 3 of each sequence number;
Width refers to:The strip width d of equidistant width bar shaped curved surface 3 is 1.50mm each of side by side;
The very poor N of lens strength numerical value in above-mentioned table is 50 degree.
Embodiment 2, the vertical single motor driving device of the two lens group that overlaps for vision correction sliding
Such as Fig. 1,2,3,4,5, by the structure of above-described embodiment 1, the equidistant width bar shaped curved surface of the whole of only eyeglass 3 is not Together,
The equidistant width bar shaped curved surface of the whole of more than one vertical equidistant zoom stripe surface eyeglass 23 is arranged side by side knot Structure is as follows,
Equidistant 3 lens strength of width bar shaped curved surface of whole of more than one vertical equidistant zoom stripe surface eyeglass 2 The very poor N of numerical value is identical, and lens strength numerical value is that 200 degree to -800 of specific arranged distribution is as follows:
In above-mentioned table:
Ordinal number refers to:1 to 41 refers to the sequence number of totally 41 equidistant width bar shaped curved surfaces 3;
The number of degrees refer to:The lens strength numerical value of the equidistant width bar shaped curved surface 3 of each sequence number;
Width refers to:The strip width d of equidistant width bar shaped curved surface 3 is 1.0mm each of side by side;
The very poor N of lens strength numerical value in above-mentioned table is 25 degree.

Claims (1)

1. the vertical single motor driving device for the two lens group sliding that overlaps for vision correction, it is characterised in that:Including diplopore Stripe board (101) is fixed on the decelerating motor (102) of diplopore stripe board (101) above, at two of diplopore stripe board (101) Two eyeglass assemblies (104) being slidably connected are respectively equipped in strip-shaped hole (103);
The structure of diplopore stripe board (101):Strip-shaped hole (103) parallel to each other there are two being set in one piece of stripe board, the strip-shaped hole (103) stripe board is divided into outer panel (106), middle partition board (107), interior plate (108);The upper surface of middle partition board (107) centre bit Middle partition board recess or middle partition board hole (118) are installed;
The structure of eyeglass assembly (104):Interdependent order connection mutual from bottom to top has more vertical equidistant zoom stripe surface eyeglasses (2), flute profile strip (109), sliding substrate (110), the top clamp plate (111) of eyeglass are connected;More vertical equidistant zoom stripeds The top margin (112) of face eyeglass (2) is entrapped in the card slot of flute profile strip (109), makes more vertical equidistant zoom stripe surface eyeglasses (2) it is fixedly connected with flute profile strip (109);The upper surface of flute profile strip (109) is fixedly connected with sliding substrate (110), in sliding substrate (110) side is bolted vertical rack plate (113);The upper surface of vertical rack plate (113) is connected with top clamp plate (111);The width of the overall thickness of sliding substrate (110) and vertical rack plate (113) and diplopore stripe board (101) strip-shaped hole (103) Spend into the size of tight fit;More vertical equidistant zoom stripe surface eyeglasses (2) be divided into smooth even surface (1) and have more it is vertical Equidistant zoom stripe surface eyeglass (2);More than two pieces vertical equidistant zoom stripe surface mirror is connected in one flute profile strip (109) Piece (2), the smooth even surface (1) of this more than two pieces vertical equidistant zoom stripe surface eyeglasses (2) is to the same face, this is more than two pieces Vertically equidistant zoom stripe surface eyeglass (2) has the more vertical equidistant zoom stripe surface eyeglasses (2) to the same face to root;One More than the two pieces vertical equidistant zoom stripe surface eyeglass (2) connected in a flute profile strip (109) is at a two lens group (116);
The connection structure of diplopore stripe board (101) and eyeglass assembly (104):(101) two items parallel to each other of diplopore stripe board There are one the sliding substrate (110) and vertical rack plate (113) of eyeglass assembly (104), two eyeglasses for card respectively in shape hole (103) The vertical rack plate (113) of assembly (104) is adjacent with middle partition board (107) both sides of diplopore stripe board (101) respectively;Strip-shaped hole (103) be stuck in sliding substrate therein (110) and vertical rack plate (113) is contacted at slidable tight fit;Positioned at bar shaped Flute profile strip (109) width of hole (103) below is more than the width of strip-shaped hole (103), is located at the top folder of strip-shaped hole (103) above Plate (111) width is more than the width of strip-shaped hole (103), and sliding substrate (110) and vertical rack plate (113) is made to be stuck in strip-shaped hole (103) sliding in;The smooth even surface (1) of the two lens group (116) of two eyeglass assemblies (104) is adjacent;Two eyeglass assemblies (104) tooth form of vertical rack plate (113) is identical;
The structure of decelerating motor (102):The rotation axis of decelerating motor (102) is equipped with gear (117), the tooth of the gear (117) Shape is identical with the tooth form of two eyeglass assembly (104) vertical rack plates (113);
The connection structure of decelerating motor (102), diplopore stripe board (101) and eyeglass assembly (104):Decelerating motor (102) is fixed It is connected to the center of diplopore stripe board (101) above, the gear (117) of decelerating motor (102) is located at diplopore stripe board (101) in partition board (107) middle partition board recess or middle partition board hole (118) in, gear (117) respectively with two eyeglass assemblies (104) vertical rack plate (113) occlusion;Gear (117) is rotated to any direction, all makes the two of two eyeglass assemblies (104) A vertical rack plate (113) is slided round about, and two vertical rack plates (113) drive the two lens group respectively connected respectively (116) it moves round about;
More vertical equidistant zoom stripe surface eyeglasses (2) include two opposite transparent surfaces, and one is smooth even surface (1), The other is more vertical equidistant zoom stripe surface eyeglasses (2);More vertical equidistant zoom stripe surface eyeglasses (2) are multiple Equidistant width bar shaped curved surface (3) is parallel to be formed side by side, make more vertical equidistant zoom stripe surface eyeglass (2) cross sections at etc. Apart from width sawtooth corrugation shape structure,
Each the strip width d of equidistant width bar shaped curved surface (3) side by side is equal, and the range of each strip width d is 0.5mm To some value between 3.0mm;
The lens strength numerical value of the same equidistant width bar shaped curved surface (3) is identical, the same equidistant width bar shaped curved surface (3) whole lens focus are point-blank;
The lens of the equidistant width bar shaped curved surface (3) of whole of same more vertical equidistant zoom stripe surface eyeglasses (2) are burnt Point line is mutually parallel;
Between the very poor N of diopter numerical value of same more vertical equidistant zoom stripe surface eyeglasses (2) is 10 degree to 100 degree Some value;
The equidistant width bar shaped curved surface (3) of whole of same more vertical equidistant zoom stripe surface eyeglasses (2) is arranged side by side, And the very poor N of lens strength numerical value is identical;
The vertical rack of separator bar (5) and eyeglass assembly (104) between any two neighboring equidistant width bar shaped curved surface (3) Plate (113) is parallel.
CN201721030522.1U 2017-04-27 2017-08-06 For vision correction overlap two lens group sliding vertical single motor driving device Withdrawn - After Issue CN207764493U (en)

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CN201710699261.0A Active CN107340582B (en) 2017-04-27 2017-08-06 Horizontal single motor driving device for sliding overlapped double lens groups for vision correction
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Families Citing this family (9)

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Publication number Priority date Publication date Assignee Title
CN207752210U (en) * 2017-04-27 2018-08-21 陈奎 For vision correction overlap two lens group sliding horizontal single motor driving device
CN107340606B (en) * 2017-04-27 2023-07-18 陈奎 Equidistant varifocal lens straight line single chip for vision correction double lens group
WO2019014855A1 (en) * 2017-07-18 2019-01-24 北京远点明视科技有限公司 High-precision electronic eyeglasses having variable power
CN108652582B (en) * 2018-05-18 2020-08-25 北京睿世力科技有限公司 Self-service subjective refraction intelligent wearable device and lens degree calculation method
CN108873379A (en) * 2018-08-01 2018-11-23 北京睿世力科技有限公司 A kind of intelligence Zoom glasses and its Zooming method
CN108873378A (en) * 2018-08-01 2018-11-23 北京睿世力科技有限公司 A kind of miniaturization Zoom glasses
CN109656031A (en) * 2018-12-27 2019-04-19 陈奎 There are the two lens that overlap to assemble the eyesight correcting glasses of horizontal single motor driving device
CN110007484A (en) * 2019-05-24 2019-07-12 江苏睿世力科技有限公司 A kind of accurate Zoom glasses
CN112130345B (en) * 2020-10-21 2024-01-23 江苏睿世力科技有限公司 A speed reduction module for intelligent glasses zoom

Family Cites Families (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1990000989A1 (en) * 1988-07-26 1990-02-08 Nauchno-Proizvodstvennoe Obiedinenie Po Traktorostroeniju Seat position adjusting unit for vehicle
CN2552042Y (en) * 2001-03-29 2003-05-21 赵增新 Diopter adjustable glasses
JP2006106488A (en) * 2004-10-07 2006-04-20 Konica Minolta Opto Inc Variable focus lens and variable focus spectacles with same
FR2921163B1 (en) * 2007-09-19 2009-12-25 Precilens Lab STABILIZED CONTACT LENS.
CN201701369U (en) * 2010-04-15 2011-01-12 中山火炬开发区睛彩视界医疗器械商行 Device for curing amblyopia and nearsightedness
CN202393993U (en) * 2011-12-20 2012-08-22 张碧波 Centre-shifting convex glasses for preventing pseudomyopia and correcting esophoria and exophoria
JP6236615B2 (en) * 2014-03-31 2017-11-29 石根 三井 Emergency disaster prevention glasses set
CN106054403B (en) * 2015-08-14 2020-01-07 丛繁滋 Glasses with dynamic slight defocusing and zooming functions in emmetropic direction
CN205027981U (en) * 2015-09-08 2016-02-10 金延滨 Bimirror frame structure
CN205251978U (en) * 2015-12-17 2016-05-25 常州金猎鹰电子科技有限公司 Vision accommodation intervenes machine
CN106154576A (en) * 2016-05-11 2016-11-23 卢江波 A kind of focus-adjustable glasses
CN106405780B (en) * 2016-11-03 2019-10-08 杭州延华多媒体科技有限公司 It looks as far as the eye can the eyeglass operating mechanism of training device for zoom
CN207752210U (en) * 2017-04-27 2018-08-21 陈奎 For vision correction overlap two lens group sliding horizontal single motor driving device

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